Integrating quantum key distribution with classical communications in backbone fiber network
arXiv:1709.10046 · doi:10.1364/OE.26.006010
Abstract
Quantum key distribution (QKD) provides information-theoretic security based on the laws of quantum mechanics. The desire to reduce costs and increase robustness in real-world applications has motivated the study of coexistence between QKD and intense classical data traffic in a single fiber. Previous works on coexistence in metropolitan areas have used wavelength-division multiplexing, however, coexistence in backbone fiber networks remains a great experimental challenge, as Tbps data of up to 20 dBm optical power is transferred, and much more noise is generated for QKD. Here we present for the first time, to the best of our knowledge, the integration of QKD with a commercial backbone network of 3.6 Tbps classical data at 21 dBm launch power over 66 km fiber. With 20 GHz pass-band filtering and large effective core area fibers, real-time secure key rates can reach 4.5 kbps and 5.1 kbps for co-propagation and counter-propagation at the maximum launch power, respectively. This demonstrates feasibility and represents an important step towards building a quantum network that coexists with the current backbone fiber infrastructure of classical communications.
11 pages, 6 figures. Accepted for publication in Optics Express
References in corpus (11)
- Measurement device independent quantum key distribution over 404 km optical fibre
- Long term performance of the SwissQuantum quantum key distribution network in a field environment
- Field and long-term demonstration of a wide area quantum key distribution network
- Coexistence of continuous variable QKD with intense DWDM classical channels
- Long-distance quantum key distribution secure against coherent attacks
- Long distance co-propagation of quantum key distribution and terabit classical optical data channels
- Ultra-high bandwidth quantum secured data transmission
- Field test of a practical secure communication network with decoy-state quantum cryptography
- Quantum secured gigabit optical access networks
- Superconducting nanowire single photon detector with on-chip bandpass filter
- Secure and efficient decoy-state quantum key distribution with inexact pulse intensities
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